The Other Half of Workflow Portability: Evidence-Backed HPC Site Profiles with Agentic Discovery
Md Saiful Islam, Douglas Thain
Abstract
Moving a workflow developed and tested at one HPC site to another rarely succeeds without some amount of trial and error. Package managers rebuild software environments, containers ship whole filesystems, and workflow specifications such as backpacks package a workflow with its software, data, and resource requirements. These approaches address one half of workflow portability: what a workflow needs. But none describes how a given HPC site must be used, and that missing half is why even a portable workflow requires manual adjustment at each new site. That gap includes the site's resource shape, storage configuration, network permissions, and operating policies. This information may be explicit in the batch system, hidden in the prose of documentation, or buried deep within a router's configuration, making it difficult for an automated deployment tool to turn site knowledge into useful deployment decisions. We propose the HPC site profile, a structured, evidence-backed document that makes this knowledge actionable. We automatically construct it in three steps that mirror where the information lives: measuring the login node, extracting typed fields from documentation with a bounded language-model agent, and submitting pilot jobs for eligible unresolved fields. Every field is verified against its evidence or discarded, so a rule, not the model, decides what enters the profile. The profile then preflights a workflow into an execution plan or an early, explainable failure. We build profiles at Purdue Anvil, TACC Stampede3, and Notre Dame CRC and present a case study of preflighting a real workflow.
Create a lesson
Related papers
MoE-CORE: Coordinated Expert Offloading and Residency for Memory-Constrained MoE Inference
Ke Yang, Yongji Gao, Xushi Li et al.
ePACT: Energy-Performance-Aware Commitment Tracking for LLM Serving
You Peng, Youhe Jiang, Chen Wang et al.
Towards a Cloud Fog Edge System for Smart Building
Christophe Cérin, Mamadou Sow, Frédéric Andrès
Exploiting the Interplay of Compute- and Memory-Bound kernels in MPI Applications
Ayesha Afzal, Krishna Manda, Georg Hager
GridSMR: Causal Compression for Sharded Blockchains
Shir Cohen, Adam Alon, Raz Omessi et al.
GPU-Initiated Communication: Dissecting Down to the Bone
Javid Baydamirli, Ismayil Ismayilov, Kaan Oktay et al.